PSI - Issue 13
Xiaofei Guo et al. / Procedia Structural Integrity 13 (2018) 1453–1459 Author name / Structural Integrity Procedia 00 (2018) 000 – 000
1459
7
materials ”. We also acknowledge Monika Nellessen in assisting performing some Electro-Backscattering Diffraction (EBSD) and Electron Channeling Contrast Image (ECCI) analysis.
References
[1] De Cooman, B C, Chin, K- G, Kim, J., 2011. High Mn TWIP steels for automotive applications, in “New Trends and Developments in Automotive System Engineering”. In: Chiaberge M. (Ed.). InTech., Rijeka, pp. 10 9. [2] Shaw. L.Villegas, J., Huang, J., Chen, S., 2008. Strengthening via deformation twinning in a nickel alloy. Materials Science and Engineering: A 480, 75-83. [3] Salem, Ayman A., Kalidindi, Surya R., Doherty, Roger D., 2003. Strain hardening of titanium: role of deformation twinning. Acta Materialia 51 (14), 4225-4237. [4] Gutierrez-Urrutia, I., Raabe, D, 2011. Dislocation and twin substructure evolution during strain hardening of an Fe-22%Mn-0.6%C TWIP steel observed by electron channeling contrast imaging. Acta materialia 59, 6649-6462. [5] Koyama, M., Akiyama, E., Sawaguchi, T., et.al., 2012. Hydrogen-induced cracking at grain and twin boundaries in an FeMnC austenitic steel. Scripta Materialia 66(7), 459-462. [6] Barnoush, A., Vehoff, H., 2010. Recent developments in the study of hydrogen embrittlement: hydrogen effect on dislocation nucleation. Acta Mater 58, 5274-85. [7] Ferreira, P., Robertson, I.M., Birnbaum, H., 1996. Influence of hydrogen on the stacking-fault energy of an austenitic stainless steel. Mater Sci Forum Trans Tech Publ, 93-6. [8] Sato, K., Ichinose, M., Hirotsu, Y., Inoue, Y., 1989. Effects of deformation induced phase transformation and twinning on the mechanical properties of austenitic Fe-Mn-Al alloys. ISIJ Int 29, 868-77. [9] Koyama, M., Akiyama, E., Lee, Y.K., Raabe, D., Tsuzaki, K., 2017. Overview of hydrogen embrittlement in high-Mn steels, International Journal of Hydrogen Energy 42(17), 12706-12723. [10] Chun, Y.S., Park, K.T., Lee, C.S., 2012. Delayed static failure of twinning-induced plasticity steels. Scripta Materialia 66, 960 – 965. [11] Guo, X., Schwedt, A., et. al. 2014. Effects of Al on delayed fracture in TWIP steels - discussion from the aspects of structure homogeneity, hydrogen traps and corrosion resistance. Proceeding of 2nd International Conference on Metals and Hydrogen, Gent, Belgium, 59-67. [12] Saeed-Akbari, A., Imlau, J., Prahl, U., et.al, 2009. Derivation and Variation in Composition-Dependent Stacking Fault Energy Maps Based on Subregular Solution Model in High-Manganese Steels. Metallurgical and Materials Transactions A, 40(13), 3076-3090.
Made with FlippingBook. PDF to flipbook with ease